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Initiation of Cyclin B Degradation by the 26S Proteasome upon Egg Activation

Immediately before the transition from metaphase to anaphase, the protein kinase activity of maturation or M-phase promoting factor (MPF) is inactivated by a mechanism that involves the degradation of its regulatory subunit, cyclin B. The availability of biologically active goldfish cyclin B produce...

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Autores principales: Tokumoto, Toshinobu, Yamashita, Masakane, Tokumoto, Mika, Katsu, Yoshinao, Horiguchi, Ryo, Kajiura, Hiroko, Nagahama, Yoshitaka
Formato: Texto
Lenguaje:English
Publicado: The Rockefeller University Press 1997
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2132556/
https://www.ncbi.nlm.nih.gov/pubmed/9298986
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author Tokumoto, Toshinobu
Yamashita, Masakane
Tokumoto, Mika
Katsu, Yoshinao
Horiguchi, Ryo
Kajiura, Hiroko
Nagahama, Yoshitaka
author_facet Tokumoto, Toshinobu
Yamashita, Masakane
Tokumoto, Mika
Katsu, Yoshinao
Horiguchi, Ryo
Kajiura, Hiroko
Nagahama, Yoshitaka
author_sort Tokumoto, Toshinobu
collection PubMed
description Immediately before the transition from metaphase to anaphase, the protein kinase activity of maturation or M-phase promoting factor (MPF) is inactivated by a mechanism that involves the degradation of its regulatory subunit, cyclin B. The availability of biologically active goldfish cyclin B produced in Escherichia coli and purified goldfish proteasomes (a nonlysosomal large protease) has allowed the role of proteasomes in the regulation of cyclin degradation to be examined for the first time. The 26S, but not the 20S proteasome, digested recombinant 49-kD cyclin B at lysine 57 (K57), producing a 42-kD truncated form. The 42-kD cyclin was also produced by the digestion of native cyclin B forming a complex with cdc2, a catalytic subunit of MPF, and a fragment transiently appeared during cyclin degradation when eggs were released from metaphase II arrest by egg activation. Mutant cyclin at K57 was resistant to both digestion by the 26S proteasome and degradation at metaphase/anaphase transition in Xenopus egg extracts. The results of this study indicate that the destruction of cyclin B is initiated by the ATP-dependent and ubiquitin-independent proteolytic activity of 26S proteasome through the first cutting in the NH(2) terminus of cyclin (at K57 in the case of goldfish cyclin B). We also surmise that this cut allows the cyclin to be ubiquitinated for further destruction by ubiquitin-dependent activity of the 26S proteasome that leads to MPF inactivation.
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spelling pubmed-21325562008-05-01 Initiation of Cyclin B Degradation by the 26S Proteasome upon Egg Activation Tokumoto, Toshinobu Yamashita, Masakane Tokumoto, Mika Katsu, Yoshinao Horiguchi, Ryo Kajiura, Hiroko Nagahama, Yoshitaka J Cell Biol Article Immediately before the transition from metaphase to anaphase, the protein kinase activity of maturation or M-phase promoting factor (MPF) is inactivated by a mechanism that involves the degradation of its regulatory subunit, cyclin B. The availability of biologically active goldfish cyclin B produced in Escherichia coli and purified goldfish proteasomes (a nonlysosomal large protease) has allowed the role of proteasomes in the regulation of cyclin degradation to be examined for the first time. The 26S, but not the 20S proteasome, digested recombinant 49-kD cyclin B at lysine 57 (K57), producing a 42-kD truncated form. The 42-kD cyclin was also produced by the digestion of native cyclin B forming a complex with cdc2, a catalytic subunit of MPF, and a fragment transiently appeared during cyclin degradation when eggs were released from metaphase II arrest by egg activation. Mutant cyclin at K57 was resistant to both digestion by the 26S proteasome and degradation at metaphase/anaphase transition in Xenopus egg extracts. The results of this study indicate that the destruction of cyclin B is initiated by the ATP-dependent and ubiquitin-independent proteolytic activity of 26S proteasome through the first cutting in the NH(2) terminus of cyclin (at K57 in the case of goldfish cyclin B). We also surmise that this cut allows the cyclin to be ubiquitinated for further destruction by ubiquitin-dependent activity of the 26S proteasome that leads to MPF inactivation. The Rockefeller University Press 1997-09-22 /pmc/articles/PMC2132556/ /pubmed/9298986 Text en This article is distributed under the terms of an Attribution–Noncommercial–Share Alike–No Mirror Sites license for the first six months after the publication date (see http://www.rupress.org/terms). After six months it is available under a Creative Commons License (Attribution–Noncommercial–Share Alike 4.0 Unported license, as described at http://creativecommons.org/licenses/by-nc-sa/4.0/).
spellingShingle Article
Tokumoto, Toshinobu
Yamashita, Masakane
Tokumoto, Mika
Katsu, Yoshinao
Horiguchi, Ryo
Kajiura, Hiroko
Nagahama, Yoshitaka
Initiation of Cyclin B Degradation by the 26S Proteasome upon Egg Activation
title Initiation of Cyclin B Degradation by the 26S Proteasome upon Egg Activation
title_full Initiation of Cyclin B Degradation by the 26S Proteasome upon Egg Activation
title_fullStr Initiation of Cyclin B Degradation by the 26S Proteasome upon Egg Activation
title_full_unstemmed Initiation of Cyclin B Degradation by the 26S Proteasome upon Egg Activation
title_short Initiation of Cyclin B Degradation by the 26S Proteasome upon Egg Activation
title_sort initiation of cyclin b degradation by the 26s proteasome upon egg activation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2132556/
https://www.ncbi.nlm.nih.gov/pubmed/9298986
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